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Experimental study on a prototype of heat pipe solar water heater using refrigerant R134a as a transfer fluid

机译:使用制冷剂R134a作为转移流体的热管太阳能热水器原型的实验研究

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A prototype of a solar water heater by using refrigerant as a heat transfer fluid is investigated experimentally. The objective is to explore the characteristics and the performance of the prototype. To make heat transfer from the collector to the heated fluid effectively, refrigerant R134a is used as a transfer. In the experiments, the initial pressure inside the heat pipe is varied. The prototype is exposed to solar irradiation in a location in Medan city for three days of the experiment. Solar collector temperatures, solar radiation, water temperature, and ambient temperature are measured. The efficiency of the system is analyzed. The results show that temperature of the hot water increases as the initial pressure of the working fluid increase. However, the increasing is not linear, and there must exist an optimum initial pressure. For the case with the refrigerant pressure of 110 psi, the maximum hot water temperature and maximum thermal efficiency are 45.36oC and 53.23%, respectively. The main conclusion can be drawn here is that solar water heater by using refrigerant R134a should be operated at initial pressure 110 psi.
机译:通过实验研究了通过使用制冷剂作为传热流体的制冷剂的太阳能热水器的原型。目的是探讨原型的特征和性能。为了有效地从收集器从收集器中传递到加热的流体,制冷剂R134a用作转移。在实验中,热管内的初始压力变化。原型暴露于棉兰城市的一个地点的太阳照射,持续了三天的实验。测量太阳能收集器温度,太阳辐射,水温和环境温度。分析了系统的效率。结果表明,随着工作流体的初始压力增加,热水的温度会增加。然而,增加的不是线性的,并且必须存在最佳的初始压力。对于110psi的制冷剂压力的情况,最大热水温度和最大热效率分别为45.36℃和53.23%。这里可以得出的主要结论是,通过使用制冷剂R134a的太阳能热水器应在初始压力​​110 psi下操作。

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